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Selective compensation of cycloconverter harmonics and interharmonics by using a hybrid power filter system

机译:使用混合动力滤波器系统选择性补偿环旋变频器谐波和互耕声

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High power variable speed cycloconverter loads are source of variable frequency interharmonics which are difficult to reduce using classical passive filters. Hybrid power filters with series connection of a small rating active filter (AF) with control systems based on total source current distortion are less effective in suppression of interharmonics, In order to improve hybrid filter compensation for interharmonics a novel selective active filter control system with tracking of interharmonics is proposed and tested. The tracking algorithm is based on adaptive notch filters with separate detection of cycloconverter input and output frequencies. Based on this information a bank of PI controllers shapes the AF compensation voltage until full compensation of distortion at targeted frequencies is achieved. Test results show good compensation of the targeted harmonics and interharmonics with a simple capacitor used as coupling element.
机译:高功率变速速度环形变频器负载是使用经典无源滤波器难以减少的可变频率间谐波源。具有基于总源电流失真的控制系统的小型额定值有源滤波器(AF)的混合动力滤波器在抑制间谐波时不太有效,以便改善具有跟踪的新型选择性有源滤波器控制系统的混合滤波补偿拟议和测试的互惠。跟踪算法基于自适应陷波滤波器,具有单独检测循环变频器输入和输出频率。基于该信息,PI控制器的银行塑造了AF补偿电压,直到实现了目标频率的完全补偿。测试结果显示有针对性谐波和互动性的良好补偿,用作耦合元件的简单电容。

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